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Effect of Phosphate-based inhibitor on prestressing tendons corrosion in simulated concrete pore solution contaminated by chloride ions

机译:磷酸盐基缓蚀剂对氯离子污染的混凝土孔隙中预应力筋腐蚀的影响

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Corrosion of prestressed concrete tendons is a huge problem that must be addressed since it can cause serious damages. This corrosion involves the synergetic effect of applied stress and aggressive environment which accelerate the material damage. The purpose of this research is to evaluate the efficiency of phosphate-based inhibitor Na3PO4 center dot 12H(2)O against prestressed steel corrosion in chloride contaminated concrete pore solution under stress conditions. Emphasis is placed on the effect of this inhibitor on the critical [Cl-]/[OH-] ratio for prestressing tendons corrosion initiation. The study was carried out using electrochemical techniques and Acoustic Emission (AE). Then samples surfaces were observed by Optical Microscope (MO) and analyzed by Energy Dispersive X-ray Spectroscopy (EDX). The obtained results indicate on one hand that the mechanical stress decreases the value of the critical [Cl-]/[OH-] ratio. On the other hand the incorporation of trisodium phosphate inhibitor (TSP) enhances the critical [Cl-]/[OH-] ratio and increases both of E-pit and E-cor values for a given ratio which suggests an anodic protection mechanism of the inhibitor. Acoustic emission evolution recorded along with the anodic polarization revealed a longer period of time for inducing the damage of the specimen when inhibitor is added. EDX analysis showed that phosphate ions are likely to form compounds that block anodic sites which help to delay prestressed steel corrosion initiation. (C) 2018 Elsevier Ltd. All rights reserved.
机译:预应力钢筋束的腐蚀是一个巨大的问题,必须解决,因为它可能导致严重的损坏。这种腐蚀涉及施加应力和侵蚀性环境的协同效应,从而加速了材料的破坏。这项研究的目的是评估磷酸盐基抑制剂Na3PO4中心点12H(2)O在应力条件下对氯化物污染的混凝土孔隙溶液中的预应力钢腐蚀的效率。重点放在该抑制剂对预应力筋腐蚀引发的临界[Cl-] / [OH-]比的影响上。该研究是使用电化学技术和声发射(AE)进行的。然后通过光学显微镜(MO)观察样品表面并通过能量色散X射线光谱法(EDX)进行分析。一方面,所得结果表明机械应力降低了临界[Cl-] / [OH-]比的值。另一方面,磷酸三钠抑制剂(TSP)的加入提高了临界[Cl-] / [OH-]的比率,并增加了给定比率的E-pit和E-cor值,这提示了该化合物的阳极保护机制。抑制剂。当添加抑制剂时,伴随着阳极极化记录的声发射演变揭示了更长的时间以引起样品的损伤。 EDX分析表明,磷酸根离子可能形成阻止阳极位点的化合物,从而有助于延迟预应力钢腐蚀的开始。 (C)2018 Elsevier Ltd.保留所有权利。

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